IP Library › Granted Patent US 10,796,605
Granted Patent B2
US 10,796,605 · App. 16/727,840 · Granted Oct 6, 2020

System and method for three-dimensional augmented reality guidance for use of equipment

Inventors: William R. Buras (Friendswood, TX); Craig S. Russell (League City, TX); Kyle Q. Nguyen (League City, TX)
Assignee: Tienovix, LLC
G09B23/286A61B8/06A61B8/085A61B8/4245A61B8/4254A61B8/4263A61B8/466A61B8/467A61B8/52A61B34/20A61B90/361G06F3/011G06F3/016G06N20/00G09B5/065G16H30/20G16H40/63A61B2034/2048A61B2034/2055A61B2090/365A61B2090/378A61B2090/3945A61B2562/0219G02B27/017
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Quick Facts
Patent No.
US 10,796,605
App. No.
16/727,840
Granted
Oct 6, 2020
Kind
B2
Abstract

Methods for providing real-time, three-dimensional (3D) augmented reality (AR) feedback guidance to a user of an equipment system to achieve improved outcomes in the use of the equipment. The methods involve providing real-time real-time position-based 3D AR feedback and the real-time outcome-based 3D AR feedback to the user via an augmented reality user interface (ARUI). The feedback may be provided to the user via a head mounted display (HMD).

Claims (22)

1. A method for providing real-time, three-dimensional (3D) augmented reality (AR) feedback guidance to a user of an equipment system, the method comprising:

receiving data from an equipment system during an equipment procedure performed by a user of the equipment system to achieve an equipment procedure outcome;

sensing real-time user positioning data relating to one or more of the three-dimensional movement, position, and orientation of at least a portion of the equipment system within a volume of the user's environment during the equipment procedure performed by the user, wherein the sensing comprises sensing at least one of 1) a magnetic field generated by said at least a portion of the equipment system; 2) the movement of one or more passive visual markers coupled to one or more of the user and a portion of the equipment system; and 3) the movement of one or more active visual markers coupled to one or more of the user and a portion of the equipment system;

retrieving from a library 1) stored reference positioning data relating to one or more of the three-dimensional movement, position, and orientation of at least a portion of the equipment system during a reference equipment procedure, and 2) stored reference outcome data relating to an outcome of said reference equipment procedure;

comparing 1) the sensed real-time user positioning data to the retrieved reference positioning data, and 2) the data received from the equipment system during the equipment procedure performed by the user to the retrieved reference outcome data;

generating real-time position-based 3D AR feedback based on the comparison of the sensed real-time user positioning data to the retrieved reference positioning data;

generating real-time outcome-based 3D AR feedback based on the comparison of the data received from the equipment system during the equipment procedure performed by the user to the retrieved reference outcome data; and

providing each of the real-time position-based 3D AR feedback and the real-time outcome-based 3D AR feedback to the user via an augmented reality user interface (ARUI), wherein providing at least one of the real-time position-based 3D AR feedback and the real-time outcome-based 3D AR feedback to the user comprises providing a feedback selected from 1) a virtual prompt indicating a movement correction to be performed by the user; 2) a virtual image or video instructing the user to change the orientation of the at least a portion of the equipment system to match a desired orientation; 3) a virtual image or video of a correct motion path to be taken by the user in performing the equipment procedure; 4) a color-coded image or video indicating one or more correct portions of the user's motion in performing the equipment procedure; 5) a color-coded image or video indicating one or more incorrect portions of the user's motion in performing the equipment procedure; 6) an auditory instruction, virtual image, or virtual video indicating a direction for the user to move at least a portion of the equipment system; and 7) tactile information.

2. The method of claim 1 , wherein providing each of the real-time position-based 3D AR feedback and the real-time outcome-based 3D AR feedback to the user comprises providing said feedback to a head mounted display (HMD) worn by the user.

3. The method of claim 2 , wherein providing each of the real-time position-based 3D AR feedback and the real-time outcome-based 3D AR feedback to the user comprises providing at least one of 1) real-time position-based 3D AR feedback to the user visually in a HMD relative to at least a portion of the equipment system, and 2) real-time outcome-based 3D AR feedback visually in a HMD relative to at least a portion of the equipment system.

4. The method of claim 1 , wherein receiving data from an equipment system during an equipment procedure performed by a user comprises receiving equipment procedure image data during a first equipment procedure performed by a user, and wherein retrieving stored reference outcome data comprises retrieving stored equipment procedure images obtained during a reference performance of the first equipment procedure by at least one of an expert user and a credentialed user of the equipment prior to the user's performance of the first equipment procedure.

5. The method of claim 4 , wherein generating real-time outcome-based 3D AR feedback is based on a comparison, using a neural network, of images generated by the user during an equipment procedure to retrieved images generated during a reference performance of the same equipment procedure prior to the user's performance of the equipment procedure.

6. The method of claim 5 , wherein the comparison is performed by a convolutional neural network.

7. A method for providing real-time, three-dimensional (3D) augmented reality (AR) feedback guidance to a user of an equipment system, the method comprising:

receiving data from an equipment system during an equipment procedure performed by a user of the equipment system to achieve an equipment system outcome;

sensing real-time user positioning data relating to one or more of the three-dimensional movement, position, and orientation of at least a portion of the equipment system within a volume of the user's environment during the equipment procedure performed by the user;

retrieving from a library at least one of 1) stored reference positioning data relating to one or more of the three-dimensional movement, position, and orientation of at least a portion of the equipment system during a reference equipment procedure, and 2) stored reference outcome data relating to an outcome of said reference equipment procedure;

comparing at least one of 1) the sensed real-time user positioning data to the retrieved reference positioning data, and 2) the data received from the equipment system during the equipment procedure performed by the user to the retrieved reference outcome data;

generating real-time position-based 3D AR feedback based on the comparison of the sensed real-time user positioning data to the retrieved reference positioning data;

generating real-time outcome-based 3D AR feedback based on the comparison of the data received from the equipment system during the equipment procedure performed by the user to the retrieved reference outcome data; and

providing each of the real-time position-based 3D AR feedback and the real-time outcome-based 3D AR feedback to a head mounted display (HMD) worn by the user via an augmented reality user interface (ARUI).

8. The method of claim 7 , wherein providing each of the real-time position-based 3D AR feedback and the real-time outcome-based 3D AR feedback to the user comprises providing at least one feedback selected from 1) a virtual prompt indicating a movement correction to be performed by the user; 2) a virtual image or video instructing the user to change the orientation of the at least a portion of the equipment system to match a desired orientation; 3) a virtual image or video of a correct motion path to be taken by the user in performing the equipment procedure; 4) a color-coded image or video indicating one or more correct portions of the user's motion in performing the equipment procedure; 5) a color-coded image or video indicating one or more incorrect portions of the user's motion in performing the equipment procedure; 6) an auditory instruction, virtual image, or virtual video indicating a direction for the user to move at least a portion of the equipment system; and 7) tactile information.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2023
From: TIETRONIX SOFTWARE, INC.
To: TIENOVIX, LLC
Reel/Frame 065128/0209 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2023
From: BURAS, WILLIAM R.; RUSSELL, CRAIG S.; NGUYEN, KYLE Q.
To: TIETRONIX SOFTWARE, INC.
Reel/Frame 065089/0889 →
Continuity (3)
Continuation 15878314 · Jan 23, 2018
Provisional Application 62450051 · Jan 24, 2017
Related Publication 20200135055A1 · Apr 30, 2020
Cited By (7)
US 12,469,181 US 12,492,953 US 12,564,373 US 12,648,820 US 12,678,133 US 12,678,236 US 12,725,536